hyperMILL MAXX Machining is a new feature for rough, high-productivity machining with a large depth of cut, utilizing the full tool blade and with reduced side cutting through a spiral tool path, significantly reducing machining times.
The latter function can be used for 2D, 3D and 5X coarse processing.
The program for high-performance CNC machining enables faster and more efficient CNC machine programming. It is designed to improve CNC programming, optimize tool paths, and reduce tool wear, leading to lower costs and greater machining accuracy.
hyperMILL MAXX Machining consists of three key modules that cover the entire spectrum of programming and machining. The first module enables high-performance rough milling with trochoidal strategies, which reduce tool load, allow deeper cuts, and shorten machining time by up to 70%. It is specifically optimized for demanding materials such as titanium, stainless steel, and aluminum. The second module handles efficient finishing, using specialized strategies for smooth surfaces and precise geometries, eliminating the need for additional manual grinding. Optimized tool paths reduce vibrations and improve the accuracy of the final product. The third module enables high-speed drilling with HPC (High Performance Cutting) technology, shortening cycle time, reducing tool wear, and allowing efficient material removal, which is crucial for mass production. Together, these three modules provide top-tier performance, accuracy, and efficiency in CNC machining.
hyperMILL MAXX Machining is the ideal solution for industries where speed and accuracy are crucial. These include industries such as aerospace, automotive, medical, and toolmaking.
To get started, you should analyze your existing CNC processes and identify areas where there are opportunities for greater efficiency. After that, you can implement the trochoidal roughing strategy, which will significantly reduce production time and tool load. Next, use the intelligent finishing strategy to improve surface quality and reduce the need for manual grinding. Finally, test high-performance drilling to see how it can further reduce cycle time, tool wear, and increase productivity.
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